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Substrate Profile and Metal-ion Selectivity of Human Divalent Metal-ion Transporter-1

机译:人类二价金属离子转运蛋白-1的底物概况和金属离子选择性

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摘要

Divalent metal-ion transporter-1 (DMT1) is a H+-coupled metal-ion transporter that plays essential roles in iron homeostasis. DMT1 exhibits reactivity (based on evoked currents) with a broad range of metal ions; however, direct measurement of transport is lacking for many of its potential substrates. We performed a comprehensive substrate-profile analysis for human DMT1 expressed in RNA-injected Xenopus oocytes by using radiotracer assays and the continuous measurement of transport by fluorescence with the metal-sensitive PhenGreen SK fluorophore. We provide validation for the use of PhenGreen SK fluorescence quenching as a reporter of cellular metal-ion uptake. We determined metal-ion selectivity under fixed conditions using the voltage clamp. Radiotracer and continuous measurement of transport by fluorescence assays revealed that DMT1 mediates the transport of several metal ions that were ranked in selectivity by using the ratio Imax/K0.5 (determined from evoked currents at −70 mV): Cd2+ > Fe2+ > Co2+, Mn2+ ≫ Zn2+, Ni2+, VO2+. DMT1 expression did not stimulate the transport of Cr2+, Cr3+, Cu+, Cu2+, Fe3+, Ga3+, Hg2+, or VO+. 55Fe2+ transport was competitively inhibited by Co2+ and Mn2+. Zn2+ only weakly inhibited 55Fe2+ transport. Our data reveal that DMT1 selects Fe2+ over its other physiological substrates and provides a basis for predicting the contribution of DMT1 to intestinal, nasal, and pulmonary absorption of metal ions and their cellular uptake in other tissues. Whereas DMT1 is a likely route of entry for the toxic heavy metal cadmium, and may serve the metabolism of cobalt, manganese, and vanadium, we predict that DMT1 should contribute little if at all to the absorption or uptake of zinc. The conclusion in previous reports that copper is a substrate of DMT1 is not supported.
机译:二价金属离子转运蛋白-1(DMT1)是H + 偶联的金属离子转运蛋白,在铁稳态中起着重要的作用。 DMT1具有与多种金属离子的反应性(基于诱发电流);然而,对于许多潜在的基质,缺乏直接的运输测量方法。我们通过使用放射性示踪剂测定法对人类注射的RNA注射的非洲爪蟾卵母细胞中表达的人DMT1进行了全面的底物谱分析,并使用金属敏感的PhenGreen SK荧光团通过荧光连续测量了转运。我们提供了使用PhenGreen SK荧光猝灭作为细胞金属离子吸收报告基因的验证。我们使用电压钳确定了固定条件下的金属离子选择性。放射性示踪剂和通过荧光测定法对转运的连续测量表明,DMT1介导了几种金属离子的转运,这些离子通过使用比率Imax / K0.5(由-70 mV的诱发电流确定):Cd 2+ 2 + 2 + ,Mn 2 + ≫ Zn 2 + ,镍 2 + ,VO 2 + 。 DMT1表达不刺激Cr 2 + ,Cr 3 + ,Cu + ,Cu 2 + 的转运,Fe 3 + ,Ga 3 + ,Hg 2 + 或VO + 。 Co 2 + 和Mn 2 + 竞争性地抑制 55 Fe 2 + 的转运。 Zn 2 + 仅弱抑制 55 Fe 2 + 的迁移。我们的数据表明DMT1在其其他生理底物上选择了Fe 2 + ,并为预测DMT1对金属离子在肠,鼻和肺中的吸收及其在其他组织中的细胞吸收提供了基础。尽管DMT1可能是有毒重金属镉的进入途径,并且可能有助于钴,锰和钒的代谢,但我们预测DMT1对锌的吸收或吸收几乎没有贡献。不支持先前报告中的结论,即铜是DMT1的底物。

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